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Athitaya Nitchot; Lester Gilbert – Education and Information Technologies, 2025
Learning programming is a complex process that requires understanding abstract concepts and solving problems efficiently. To support and motivate students, educators can use technology-enhanced learning (TEL) in the form of visual tools for knowledge mapping. Mytelemap, a prototype tool, uses TEL to organize and visualize information, enhancing…
Descriptors: Learning Motivation, Concept Mapping, Programming, Computer Science Education
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Rajagopal Sankaranarayanan; Mohan Yang; Kyungbin Kwon – Journal of Computing in Higher Education, 2025
The purpose of this study is to explore the influence of the microlearning instructional approach in an online introductory database programming classroom. The ultimate goal of this study is to inform educators and instructional designers on the design and development of microlearning content that maximizes student learning. Grounded within the…
Descriptors: Teaching Methods, Introductory Courses, Databases, Programming
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Danielle Lottridge; Davis Dimalen; Gerald Weber – ACM Transactions on Computing Education, 2025
Automated assessment is well-established within computer science courses but largely absent from human--computer interaction courses. Automating the assessment of human--computer interaction (HCI) is challenging because the coursework tends not to be computational but rather highly creative, such as designing and implementing interactive…
Descriptors: Computer Science Education, Computer Assisted Testing, Automation, Man Machine Systems
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Ville Isomöttönen; Antti Jussi Lakanen; Elina Valkonen – ACM Transactions on Computing Education, 2025
Identity has received ample attention in computing education research from the viewpoint of "computing identity" and broadening participation, while more attention has been called for to clarify its role. We looked into identity development in the context of Computer Science 1 (CS1) based on Marcia's identity statuses and subsequent…
Descriptors: Computer Science Education, Self Concept, Self Efficacy, College Students
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Jiaci Lin; Qijiang Shu; Rong Chen; Chunlin Gao; Kaiqing Xu; Keli Yin; Fuhua Yang – International Journal of Technology and Design Education, 2025
Computational thinking (CT) is an essential component of critical skills for university students, representing the ability to analyze and solve problems. In accordance with constructivist learning theory and the core elements of cultivating CT, this research has developed a Project-Based Teaching approach with computational thinking as its focal…
Descriptors: Computation, Thinking Skills, College Students, Active Learning
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Tang Wee Teo; Sherwin John San Buenaventura Mabulo; Kim Chwee Daniel Tan; Jin Xin Matilda Ho; Xue Xian Thea Tan – Journal of Science Education and Technology, 2025
STEM (science, technology, engineering, mathematics) hackathons have been conducted to offer opportunities for diverse participants to work collaboratively and intensely on tasks within a short period. However, most literature about hackathons does not offer theoretical discussions on the affordances of such learning contexts for school students.…
Descriptors: Epistemology, STEM Education, Computer Security, Programming
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Clara Puni-Nyamesem; Candi Clevinger – Dimensions of Early Childhood, 2025
As technology becomes more important in our daily lives, teaching computer science in schools is becoming a priority. In 2022, the Tennessee General Assembly passed PC 979, a law requiring all public and charter schools to teach computer science at every grade level including kindergarten classrooms (Tennessee Department of Education, 2024). While…
Descriptors: Early Childhood Education, Computer Use, Technology Integration, Computer Science Education
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Anna Eckerdal; Anders Berglund; Michael Thuné – European Journal of Engineering Education, 2024
Learning in the computer laboratory is an important component when students learn computer programming. In this article, we analyse empirical data on novice students working in pairs in the laboratory. Using an approach inspired by phenomenography and variation theory, we specifically focus on how students' learning of theory and their learning of…
Descriptors: Programming, Theory Practice Relationship, Higher Education, Computer Science Education
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Tom Harrison; Gianfranco Polizzi; Shane McLoughlin; Francisco Moller – Education and Information Technologies, 2024
Cyber-wisdom is the ability to know and do the right thing at the right time, when using digital technologies, and is a concept that is gaining attention from educators. Whilst the theory and practice of cyber-wisdom education is established, to date there has been no attempt to investigate how the virtue of cyber-wisdom might be measured. This is…
Descriptors: Computer Literacy, Citizenship Education, Measurement, Computer Science Education
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Davi Bernardo Silva; Deborah Ribeiro Carvalho; Carlos N. Silla – IEEE Transactions on Learning Technologies, 2024
Throughout a programming course, students develop various source code tasks. Using these tasks to track students' progress can provide clues to the strengths and weaknesses found in each learning topic. This practice allows the teacher to intervene in learning in the first few weeks of class and maximize student gains. However, the biggest…
Descriptors: Computation, Models, Ability Grouping, Programming
Peace Bransberger; Patrick Lane; Christina Sedney – Western Interstate Commission for Higher Education, 2024
In 2022, industry leaders voiced concerns to policymakers that Idaho was not producing enough engineering and computer science graduates from its public institutions to meet the needs of Idaho's economy. In response, the Idaho State Board of Education commissioned an analysis from Western Interstate Commission for Higher Education (WICHE) to…
Descriptors: Engineering Education, Computer Science Education, College Graduates, Labor Supply
Peter Tianyi Hu – ProQuest LLC, 2024
Quantum mechanics is notoriously challenging, and research has found that students struggle with many common difficulties when learning it. It is also proving to be a critical piece of many exciting fields that are all but assured to see great development and expansion in the coming years; the Second Quantum Revolution is upon us. Quantum…
Descriptors: Quantum Mechanics, Concept Formation, Information Science, Engineering
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Yonggang Wei; Lu Wang; Yi Tang; Junyue Su; Yaxian Lei; Wanran Peng – Journal of Computer Assisted Learning, 2024
Background: The pedagogy of computational thinking has gained extensive traction across numerous nations globally, with a particular emphasis on nurturing computational thinking in the formative years of early childhood. Nevertheless, the efficacy of diverse instructional approaches in the domain of programming education, with regards to fostering…
Descriptors: Programming, Computation, Thinking Skills, Young Children
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Saima Ritonummi; Valtteri Siitonen; Markus Salo; Henri Pirkkalainen – Journal of Workplace Learning, 2024
Purpose: The purpose of this study is to investigate the barriers that prevent workers in the software industry from experiencing flow in their work. Design/methodology/approach: This study was conducted by using a qualitative critical incident technique-inspired questionnaire. Findings: The findings suggest that workers in the software industry…
Descriptors: Barriers, Computer Software, Computer Science, Attention Control
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Atanu Bhattacharya; Kalyan Dasgupta; Binoy Paine – Journal of Chemical Education, 2024
In this paper, we present a computational chemistry project that demonstrates the quantum dynamics of a free particle, using both classical and quantum computing algorithms. This project can be used in a computational quantum chemistry course in which the instructor introduces quantum computing. Students write their own programs to simulate the…
Descriptors: Chemistry, Science Education, Quantum Mechanics, Computer Science
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